高压变电站最佳接地垫的设计

K. Sushma, G. Raju, P. Upadhyay
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引用次数: 6

摘要

为保证供电系统的安全、正常运行,接地是必不可少的。一个有效的接地系统取决于多种因素,如土壤表面层的电阻率、故障电流的持续时间和大小、人体所能承受的最大安全电流以及由于故障电流可能发生的允许接地电位上升。基本上有六种接地系统在使用。土壤电阻率可以用众所周知的三电极法测定。本部门制作了尺寸为1×1×0.5m的电解槽,并将实验结果与分析值进行了比较。已有经验公式[1]用于计算工频和脉冲电流注入时的地电阻。表2给出了220KV和400KV栅格尺寸为2m,栅格尺寸为60m×60m和100m×100m时的阶跃电位和接触电位的分析值。该数据用于确定接地网的最佳尺寸。然后使用[2]中描述的方法研究该网格在脉冲电流注入下的性能。在此基础上,报告了讨论和结论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Design of optimal grounding mats for high voltage substation
Earthing is essential for electric supply system to ensure safety and proper operation. An effective earthing system depends on various factors like resistivity of surface layer of soil, duration and magnitude of fault current, maximum safe current that a human body can tolerate and the permissible earth potential rise that may take place due to fault current. There are basically six grounding systems in use. The soil resistivity can be determined with the well known three electrode method. An electrolytic tank of dimension 1×1×0.5m is fabricated in this department to experimentally compare the results with analytical values. There are empirical formulae given [1] to calculate the ground resistance at power frequency and under impulse current injection. The analytical values for the step and touch potentials for 220KV & 400KV are given in table II for grid size of 2m for a mat size of 60m×60m and 100m×100m. This data is used for optimal sizing of the grounding grid. The performance of this grid is then studied under impulse current injection using the method described in [2]. Based on the results, the discussions and conclusions are reported.
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